首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Identification of Novel Genes Associated with Alginate Production in Pseudomonas aeruginosa Using Mini-himar1 Mariner Transposon-mediated Mutagenesis
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Identification of Novel Genes Associated with Alginate Production in Pseudomonas aeruginosa Using Mini-himar1 Mariner Transposon-mediated Mutagenesis

机译:迷你与himar1水手转座子介导的诱变鉴定与铜绿假单胞菌藻酸盐生产相关的新基因。

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摘要

Pseudomonas aeruginosa is a Gram-negative, environmental bacterium with versatile metabolic capabilities. P. aeruginosa is an opportunistic bacterial pathogen which establishes chronic pulmonary infections in patients with cystic fibrosis (CF). The overproduction of a capsular polysaccharide called alginate, also known as mucoidy, promotes the formation of mucoid biofilms which are more resistant than planktonic cells to antibiotic chemotherapy and host defenses. Additionally, the conversion from the nonmucoid to mucoid phenotype is a clinical marker for the onset of chronic infection in CF. Alginate overproduction by P. aeruginosa is an endergonic process which heavily taxes cellular energy. Therefore, alginate production is highly regulated in P. aeruginosa. To better understand alginate regulation, we describe a protocol using the mini-himar1 transposon mutagenesis for the identification of novel alginate regulators in a prototypic strain PAO1. The procedure consists of two basic steps. First, we transferred the mini-himar1 transposon (pFAC) from host E. coli SM10/λpir into recipient P. aeruginosa PAO1 via biparental conjugation to create a high-density insertion mutant library, which were selected on Pseudomonas isolation agar plates supplemented with gentamycin. Secondly, we screened and isolated the mucoid colonies to map the insertion site through inverse PCR using DNA primers pointing outward from the gentamycin cassette and DNA sequencing. Using this protocol, we have identified two novel alginate regulators, mucE (PA4033) and kinB (PA5484), in strain PAO1 with a wild-type mucA encoding the anti-sigma factor MucA for the master alginate regulator AlgU (AlgT, σ22). This high-throughput mutagenesis protocol can be modified for the identification of other virulence-related genes causing change in colony morphology.
机译:铜绿假单胞菌是革兰氏阴性环境细菌,具有多种代谢能力。铜绿假单胞菌是一种机会性细菌病原体,可在患有囊性纤维化(CF)的患者中建立慢性肺部感染。被称为藻酸盐的荚膜多糖的过量生产,也称为粘液样,促进了粘液生物膜的形成,该膜比浮游细胞对抗生素化学疗法和宿主防御更有抵抗力。另外,从非粘液表型到粘液表型的转化是CF中慢性感染发作的临床标志。铜绿假单胞菌的藻酸盐过量生产是一个重金属的过程,它使细胞的能量负担沉重。因此,铜绿假单胞菌中藻酸盐的产生受到高度调节。为了更好地理解藻酸盐调节,我们描述了使用mini-himar1转座子诱变的协议,用于鉴定原型菌株PAO1中的新型藻酸盐调节剂。该过程包括两个基本步骤。首先,我们通过双亲结合将mini-himar1转座子(pFAC)从宿主大肠杆菌SM10 /λpir转移到受体铜绿假单胞菌PAO1中,以创建高密度插入突变体文库,然后在假单胞菌琼脂平板上添加庆大霉素的平板上进行选择。其次,我们使用庆大霉素盒向外指向的DNA引物和DNA测序,通过反向PCR筛选并分离了粘液样菌落,以定位插入位点。使用此协议,我们在菌株PAO1中鉴定了两个新型藻酸盐调节剂mucE(PA4033)和kinB(PA5484),其中野生型mucA编码用于主要藻酸盐调节剂AlgU的抗sigma因子MucA(AlgT,σ 22 )。可以修改此高通量诱变方案,以鉴定引起菌落形态变化的其他与毒力相关的基因。

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